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Global modes of flute instability of a rotating cylindrical plasma

机译:旋转圆柱等离子体的凹槽不稳定性的整体模式

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The influence of rotation on the flute instability of a cylindrical gravitating plasma in a straight inhomogeneous magnetic field is studied in the framework of one-fluid magnetohydrodynamics. The dispersion relation and integral expression for the instability growth rate of eigenmodes are derived. It is shown that, in the framework of the given problem, rotation is a destabilizing factor, and the corresponding theorem is proved for the general case. For a linear radial profile of the rotation frequency, the structure of eigenmodes is calculated. The growth rate of these modes is shown to increase with increasing rotation velocity and azimuthal mode number. It is found that plasma rotation in the eigenmode localization region leads to the displacement of perturbation from the rotation region, which results in a decrease in the instability growth rate. The absence of eigenmodes (i.e., exponential instability of the system) for certain profiles of the density and rotation frequency is demonstrated.
机译:在单流体磁流体动力学的框架内研究了旋转对圆柱形不等离子在垂直非均匀磁场中笛形不稳定性的影响。推导了本征模不稳定性增长速度的色散关系和积分表达式。结果表明,在给定问题的框架内,旋转是一个不稳定因素,并针对一般情况证明了相应的定理。对于旋转频率的线性径向轮廓,计算本征模的结构。这些模式的增长率显示出随着转速和方位模数的增加而增加。发现在本征模定位区域中的等离子体旋转导致扰动从旋转区域位移,这导致不稳定性增长率降低。证明了对于密度和旋转频率的某些分布图没有本征模(即系统的指数不稳定性)。

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